Coherent radiation by magnets with exchange interactions

被引:4
|
作者
Yukalov, V. I. [1 ]
Yukalova, E. P. [2 ]
机构
[1] Joint Inst Nucl Res, Bogolubov Lab Theoret Phys, Dubna 141980, Russia
[2] Joint Inst Nucl Res, Informat Technol Lab, Dubna 141980, Russia
关键词
magnetic materials; exchange interactions; magnetic graphene; spintronics; spin superradiance; maser radiation;
D O I
10.1088/1054-660X/25/8/085801
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A wide class of materials acquire magnetic properties due to particle interactions through exchange forces. These can be atoms and molecules composing the system itself, as in the case of numerous magnetic substances. Or these could be different defects, as in the case of graphene, graphite, carbon nanotubes, and related materials. A theory is suggested describing a fast magnetization reversal in magnetic systems, whose magnetism is caused by exchange interactions. The effect is based on the coupling of a magnetic sample with an electric circuit producing a feedback magnetic field. This method can find various applications in spintronics. The magnetization reversal can be self-organized, producing spin superradiance. A part of radiation is absorbed by a resonator magnetic coil. But an essential part of radiation can also be emitted through the coil sides.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] The Dilemma of CrIIINiII Exchange Interactions: Ferromagnetism versus Antiferromagnetism
    Aravena, Daniel
    Ruiz, Eliseo
    CHEMISTRY-A EUROPEAN JOURNAL, 2011, 17 (32) : 8841 - 8849
  • [22] Combined calculation method of weak exchange interactions in biradicals
    Umanskiy, S. Ya.
    Golubeva, E. N.
    Plakhutin, B. N.
    RUSSIAN CHEMICAL BULLETIN, 2013, 62 (07) : 1511 - 1518
  • [23] Indirect Exchange and Ruderman-Kittel-Kasuya-Yosida (RKKY) Interactions in Magnetically-Doped Graphene
    Power, Stephen R.
    Ferreira, Mauro S.
    CRYSTALS, 2013, 3 (01): : 49 - 78
  • [24] Weak exchange interactions in biradicals: A pseudopotential for unpaired electrons and an asymptotic methods for calculating the exchange integral
    Umanskii, S. Ya.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY B, 2015, 9 (01) : 1 - 8
  • [25] Effect of magnetoelastic interactions on the formation of spiral magnetic structures in frustrated non-Heisenberg magnets
    Fridman, Yu. A.
    Gorelikov, G. A.
    LOW TEMPERATURE PHYSICS, 2011, 37 (06) : 459 - 464
  • [26] Phase constituents, magnetic properties, intergranular exchange interactions and transition temperatures of Ge-doped CeFeB alloys
    Rehman, Sajjad Ur
    Jiang, Qingzheng
    Liu, Kai
    He, Lunke
    Ouyang, Han
    Zhang, Lili
    Wang, Lei
    Ma, Shengcan
    Zhong, Zhenchen
    JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2019, 132 : 182 - 186
  • [27] Exchange Interactions in Rare-Earth-Transition Metal Compounds
    E. Burzo
    P. Vlaic
    D. P. Kozlenko
    A. V. Rutkauskas
    Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques, 2021, 15 : 520 - 526
  • [28] Exchange interactions and Curie temperature of Y-Co compounds
    Kashyap, A
    Skomski, R
    Sabiryanov, RF
    Jaswal, SS
    Sellmyer, DJ
    IEEE TRANSACTIONS ON MAGNETICS, 2003, 39 (05) : 2908 - 2910
  • [29] Exchange Interactions in Rare-Earth-Transition Metal Compounds
    Burzo, E.
    Vlaic, P.
    Kozlenko, D. P.
    Rutkauskas, A. V.
    JOURNAL OF SURFACE INVESTIGATION, 2021, 15 (03): : 520 - 526
  • [30] Exchange interactions in oxovanadium phosphates: towards the understanding of the magnetic patterns
    Petit, S
    Borshch, SA
    Robert, V
    JOURNAL OF SOLID STATE CHEMISTRY, 2003, 170 (02) : 237 - 246